An Information Theoretic Analysis of Ghost Modulation

Fuente: arXiv
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Main Authors: Harman, Daniel, Palacios, Ashton, Lundrigan, Philip, Harrison, Willie K.
Format: Preprint
Published: 2024
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author Harman, Daniel
Palacios, Ashton
Lundrigan, Philip
Harrison, Willie K.
author_facet Harman, Daniel
Palacios, Ashton
Lundrigan, Philip
Harrison, Willie K.
contents Side channels have become an essential component of many modern information-theoretic schemes. The emerging field of cross technology communications (CTC) provides practical methods for creating intentional side channels between existing communications technologies. This paper describes a theoretical foundation for one such, recently proposed, CTC scheme: Ghost Modulation (GM). Designed to modulate a low-data-rate message atop an existing network stream, GM is particularly suited for transmitting identification or covert information. The implementation only requires firmware updates to existing hardware, making it a cost-effective solution. However, GM provides an interesting technical challenge due to a highly asymmetric binary crossover erasure channel (BCEC) that results from packet drops and network delays. In this work, we provide a mathematical description of the signal and channel models for GM. A heuristic decision rule based on maximum-likelihood principles for simplified channel models is proposed. We describe an algorithm for GM packet acquisition and timing synchronization, supported by simulation results. Several well known short block codes are applied, and bit error rate (BER) results are presented.
format Preprint
id arxiv_https___arxiv_org_abs_2412_05249
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle An Information Theoretic Analysis of Ghost Modulation
Harman, Daniel
Palacios, Ashton
Lundrigan, Philip
Harrison, Willie K.
Information Theory
Signal Processing
Side channels have become an essential component of many modern information-theoretic schemes. The emerging field of cross technology communications (CTC) provides practical methods for creating intentional side channels between existing communications technologies. This paper describes a theoretical foundation for one such, recently proposed, CTC scheme: Ghost Modulation (GM). Designed to modulate a low-data-rate message atop an existing network stream, GM is particularly suited for transmitting identification or covert information. The implementation only requires firmware updates to existing hardware, making it a cost-effective solution. However, GM provides an interesting technical challenge due to a highly asymmetric binary crossover erasure channel (BCEC) that results from packet drops and network delays. In this work, we provide a mathematical description of the signal and channel models for GM. A heuristic decision rule based on maximum-likelihood principles for simplified channel models is proposed. We describe an algorithm for GM packet acquisition and timing synchronization, supported by simulation results. Several well known short block codes are applied, and bit error rate (BER) results are presented.
title An Information Theoretic Analysis of Ghost Modulation
topic Information Theory
Signal Processing
url https://arxiv.org/abs/2412.05249